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About the role: We are looking for a professional research assistant/technician to support our development of the next-generation electrochemical technologies for direct ocean capture of CO2
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performance fillers in coatings and plasters. This PhD will focus on improving CO2 capture efficiency through the use of a novel type of chemicals and converting CO2 to functional carbonates
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We are looking for a highly motivated postdoctoral research associate to develop the next-generation electrochemical technologies for direct ocean capture of CO2. Developing methods for CO2 removal
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. (d) Heterogeneous catalysis, e.g. electrolyzers for CO2 reduction. (e) CO2 capture with waste, e.g. carbonation using ashes Work synergistically with PI and Co-PIs in experimental designs, conducting
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explore include, not limited to: Pyrolysis, gasification, hydrothermal carbonation, hydrothermal liquefaction, Fisher-Tropsh, etc. CO2 capture methods (Chemical and calcium looping, absorption, adsorption
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for projects relevant to the lab. In particular, the position will contribute to projects on electrochemical battery recycling and CO2 capture, as well as the development of new redox-active separation materials
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cement paste [1–3]. In addition to the manufacture of low CO2-emission binders for cement-based materials, works have been done on combining CO2 capture with preparation of cement-based materials
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researchers will work on include: Pyrolysis, gasification, hydrothermal carbonation, hydrothermal liquefaction, Fisher-Tropsh, etc. CO2 capture methods CO2 utilization & conversion to high-value chemicals (e.g
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, internal, and crop sensing layers. Actions include modeling schemas for unstructured and structured data, such as pH and CO2 time series, defining data partitioning policies to optimize historical queries
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, such as pH and CO2 time series, defining data partitioning policies to optimize historical queries on specific crops, and implementing governance layers to ensure the integrity of data intended for official